Keonics Certified Embedded System

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1 Duration: 2 Months Basic Electronics Keonics Certified Embedded System 1. Semi Conductors Diodes and Applications 1.1 P-N Junction Diode 1.2 Characteristics and Parameters 1.3 The Diode Current Equation & Forward Bias Characteristics 1.4 The Diode Current Equation & Reverse Bias Characteristics 1.5 Diode Approximations 1.6 D.C Load Line 1.7 Temperature Dependence of V-1 Characteristics 1.8 A.C Equivalent Circuits 1.9 Zener Diode 1.10 Half-Wave Diode Rectifier 1.11 Full-Wave Rectifier 1.12 Approximate Analysis of Capacitor Filter 1.13 Power Supply Performance 1.14 Zener Diode Voltage Regulators 1.15 Performances-Conventional Approach 2. Transistors 2.1 Introduction 2.2 The Bipolar Junction Transistor 2.3 Unbiased PNP and NPN 2.4 Principal of Operation of a PNP Transistor 2.5 Principle of Operation of an NPN Transistor 2.6 Transistor Voltages and Currents 2.7 Amplification 2.8 Common Base Characteristics 2.9 Common Emitter Characteristics 2.10 Common Collector Characteristics 2.11 Common Collector Characteristics 2.12 D.C Load Line and Bias Point

2 3. Other Devices 3.1 Silicon Controlled Rectifies (SCR) 3.2 SCR Characteristics and Parameters 3.3 Pulse Control of an SCR 3.4 More SCR Applications 3.5 Uni junction Transistor (UJT) 3.6 Field Effect Transistor (FET) 3.7 FET Amplification 4. Amplifiers & Oscillators 4.1 Decibels and Half-Power Points 4.2 Single Stage CE Amplifier 4.3 Resistance-Capacitance Coupled Two-Stage Amplifier 4.4 Series Voltage Negative Feedback 4.5 Additional Effects of Negative Feedback 4.6 Barkhausen Criterion 4.7 RC Phase Shift Oscillators 4.8 Colpitts Oscillator 4.9 Hartley Oscillator 4.10 Crystal Oscillator 5. Communication System 5.1 Block Diagram of communication System 5.2 Modulation 5.3 Radio Systems 5.4 Superheterodyne Receivers 5.5 Numerical Examples 6. Digital Logic 6.1 Boolean algebra 6.2 Logic Gates 6.3 OR Gate 6.4 AND Gate 6.5 NOT Gate 6.6 NAND Gate 6.7 NOR Gate 6.8 XOR Gate 6.9 XNOR Gate

3 6.10 Half-adder 6.11 Full-adder 6.12 Parallel Binary adder 7. Introduction to Embedded Systems 7.1 Brief Introduction 7.2 Classifications of Embedded Systems 7.3 Characteristics of an Embedded System 7.4 Applications of an Embedded Systems 8. Introduction to Embedded C Programming 8.1 Assembly Vs. C 8.2 What is Embedded C 8.3 C Vs. Embedded C 8.4 C Programming 8.5 Data types, operators and Variables 8.6 Storage Classes 8.7 Stack Frame Analysis 8.8 Functions 8.9 Arrays 8.10 Pointers 8.11 Structures 8.12 Advance C Programming Level Pointers and Arrays 8.14 Pointers and Functions 8.15 Variable Argument Function 8.16 Memory Management 8.17 Structures 8.18 Structures and Array 8.19 Structures and Functions 8.20 Unions 8.21 Enumerations 8.22 Macros 8.23 GDB Debug tool 8.24 Advance C programming level Introduction to Data Structures 8.26 Types of Arrays 8.27 Linked Lists 8.28 Singly Linked List 8.29 Doubly Linked Lists 8.30 Circular lists 8.31 Sorting algorithms 8.32 Applications of Sorting Algorithm

4 8.33 Searching Algorithm 8.34 Stacks 8.35 Applications of Stack 8.36 Queues 8.37 Applications of Queues 8.38 Deque 8.39 Circular Queues 8.40 Priority Queues 9. Basics of Micro controllers 9.1 What are Micro Processors? 9.2 What is Micro Controller? 9.3 Difference between Micro controller and Microprocessor 9.4 Difference between Von Newman and Harvard Architectures 9.5 Difference between CISC & RISC Architectures 9.6 Overview of MCS51 Family 10. Intel 8051 Architecture 10.1 Features of 8051 micro controller 10.2 Internal ROM memory Architecture 10.3 Internal RAM Memory Architecture 10.4 Pin out detail of 8051 micro controller 10.5 Instruction Set 10.6 Data Transfer Instruction Set 10.7 Arithmetic Instruction Set 10.8 Bitwise and Byte wise Logical Instruction Set 10.9 Rotate Instruction Set Call and Jump Instruction Set Stack Operation and its architecture 11. Programming 8051 in Assembly 11.1 Introduction to Assembly level Programming 11.2 Assembly Programming 11.3 IO Port Programming 11.4 Timer and Counter Programming 11.5 Serial Port Programming 11.6 Interrupt Handling 12. Keil C Programming and Interfacing 8051 with peripherals and devices 12.1 Need of Cross Compiler 12.2 Popular Cross Compilers 12.3 What and Why Compiler Directives

5 12.4 Overview of µ vision Development. Tools 12.5 Environmental settings required to run a Keil C program 12.6 Introduction to Keil C 12.7 Intermixing C and Assembly 12.8 Interfacing Techniques IO Port Interface Interfacing LED Interfacing Liquid Crystal Display (LCD) Interfacing a Keypad Interfacing EEPROM Interfacing ADC Interfacing Sensors Interfacing DAC Interfacing Stepper Motor Interfacing DC Motor 12.9 Advanced Programming Issues What is and Why Optimization What are 8051 Specific Optimization supported by Cx Difference between Keil C and ANSI C

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